School of Integrative Biological & Chemical Sciences Faculty Publications
Document Type
Article
Publication Date
7-20-2026
Abstract
Most bird species are diurnal but drastically change their diel cycle of activity to migrate at night. Nocturnal migration has been documented using different methods (e.g., experiments, radar and radio tracking, and acoustic monitoring), but accurately quantifying the proportion of nocturnal versus diurnal flight at the individual and species levels, and understanding how this behavior evolved across the avian tree, has remained methodologically challenging.1,2,3 Such uncertainty is not only of theoretical importance but also limits our ability to mitigate conservation threats, particularly from light pollution and building collisions.4,5,6 With multi-sensor geolocators recording light, barometric pressure, and activity,7,8 we reconstructed high-resolution migratory trajectories9,10 for 411 individuals from 56 small- or medium-sized landbird species across four continents and measured the proportion of each flight that occurred during night or day. Our species-level quantification confirmed nocturnal migration as the dominant strategy among small landbirds, while also providing precise flight proportion estimates across a broad taxonomic sample and refining the classification of several species previously described as partial or facultative diurnal migrants. We found that birds initiated and ended migratory flights near civil dusk and dawn, thereby maximizing nocturnal travel. The phylogenetic signal we detected indicates that nocturnal migration is largely conserved within lineages. While nocturnal migration confers multiple advantages, the relative importance of the proposed drivers remains to be determined.11,12 Our study provides species-specific quantification of nocturnal migration, highlights tracking gaps across taxa and regions, and opens new avenues for studying the evolutionary, ecological, and sensory drivers of nocturnal migratory flights.
Recommended Citation
Dufour, Paul, Raphaël Nussbaumer, Paul Doniol-Valcroze, et al. “Multi-Sensor Tracking Reveals the Extent of Nocturnal Migration in Landbirds.” Current Biology 36, no. 14 (2026): 3697-3706.e3. https://doi.org/10.1016/j.cub.2026.06.030.
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.
Publication Title
Current Biology
DOI
10.1016/j.cub.2026.06.030

Comments
This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0